Direct Conversion of Methane to Propylene

  • Hou Y
  • Lan Y
  • Qian C
  • et al.
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Abstract

Nonoxidative coupling of methane exhibits promising prospect in that it affords value-added hydrocarbons and hydrogen with high atom economy. However, challenge remains in direct, selective conversion of methane to more valuable hydrocarbons like olefins. The current work presents a catalyst with well-dispersed Ta atoms anchored by graphitic C 3 N 4 -supported phthalocyanine. Such a catalyst is able to convert methane selectively to ethylene and propylene at a relatively low temperature (350 °C). The conception of the active center and construction of the catalyst have been described, and the origins of the catalytic performance are discussed.

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APA

Hou, Y., Lan, Y., Qian, C., & Zhou, S. (2023). Direct Conversion of Methane to Propylene. Research, 6. https://doi.org/10.34133/research.0218

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